Patent classifications
A01K45/005
Reduced weight live poultry hauling system
A reduced-weight poultry cage is used in conjunction with a reduced-weight trailer to transport live poultry for maximizing the poundage of poultry being transported while reducing the number of trips and fuel expenses. The poultry cage includes a combination of aluminum and plastic elements that reduce cage weight, provide for nesting of cages in stacks as well as easy replacement of failed parts. Furthermore, a drop-deck aluminum trailer with a reduced floor and guide rail alignment stops allows for a durable yet lightweight trailer that can haul a plurality of stacks of these poultry cages, thereby maximizing cubic feet availability while being compliant with various road and bridge laws.
Portable basket colony for growing and transport and method of use
A colony basket and method of using the same for handling poultry from DOC through the growing process and on to a production facility comprising a harvesting system, a loading system, a transport system, an unloading and storing system, hanging system and cleaning system. The system and method performs the steps of harvesting and colonizing live poultry into a singly stackable and transportable colony basket, stacking and loading the trays on a transport, unloading and temporarily storing the poultry for subsequent processing.
EGG GRASP DEVICE HAVING INTERLACED MEMBERS, AND ASSOCIATED SYSTEMS AND METHODS
An egg grasp device is provided. Such a device includes a body and a plurality of elongated members extending from the body. The elongated members are interlaced to form a sheath capable of retaining an egg. The sheath has a distal end and a proximal end at which the elongated members are operably engaged with the body. The elongated members cooperate to define an opening at the distal end through which an egg is received when the elongated members engage and deflect about an egg such that the egg is seated within the sheath. Associated systems and methods are also provided.
ANTIMICROBIAL COMPOUNDS AND COMPOSITIONS, AND USES THEREOF
A method of enhancing the growth of an animal is provided. The method includes causing the animal to ingest or absorb an effective amount of one or more Fe III complex compounds, including but not limited to Fe III complexes comprising ligands bound to the iron centre selected from amino acids or ?-hydroxy acids, o-hydroxy benzoic acids or pyridine-2-carboxylic acids, such as ferric quinate, ferric tyrosine, ferric DOPA and ferric phenylalanine. Compounds which are structural and/or functional variants, derivatives and/or analogs of the foregoing compounds, as further described herein are also disclosed. Methods for inhibiting, reducing, or preventing biofilm formation or buildup on a surface; the treatment of, inhibition of growth of, and inhibition of colonization by, bacteria, both in biological and non-biological environments; disinfecting surfaces, potentiating the effects of antibiotics and other anti-microbial agents, and increasing the sensitivity of bacteria and other microorganisms, to anti-microbial agents are also provided.
SYSTEM AND DEVICES FOR MANAGING A POULTRY FARM
Disclosed is a system (100) for a poultry farm. The system (100) includes an automated guided vehicle (110). The automated guided vehicle (110) includes a body (111) adapted to mount a plurality of devices (170), a plurality of wheels (112), a plurality of sensors (113), a collection bin (114) at the rear end (116) of the automated guided vehicle (110), and a detachable protection arrangement (160) at a front (115) of the body (111). The system (100) also includes an overhead power railing unit (120), an open overhead utility line (130) with a vertical water supply line (140) with a pump (142), and a vertical conveyor (150) to retrieve the litter, eggs or wastewater from the collection bin (114) and dispose in the open overhead utility line (130).
SYSTEM AND METHOD FOR DYNAMICALLY ALTERING A DEVICE FOR MOVING ANIMALS
A navigation device provides for autonomous interactions with animals and navigation of the animal environment, such as a poultry barn. The navigation device includes one or more cameras for detecting animals. The navigation device also includes one or more cameras for object detection purposes. The navigation device also includes a camera or a LiDAR for mapping the position and orientation (pose) of the navigation device within the environment. By the object detection and the pose information, the navigation device autonomously travels within the environment. The navigation device also includes a spinner assembly for deterring animals from the path of the navigation device.
Method and Apparatus for Creating an Opening in the Calcified Shell in the Region of the Blunt End of an Incubated Bird Egg with Embryo and for Determining the Sex thereof
According to the present invention, a method and an apparatus are provided for creating an opening in the calcified shell of an incubated bird egg containing an embryo, in the region of the blunt end of the incubated bird egg. Within the region of the blunt end there is an outer membrane and an inner membrane with an air cell located therebetween. The apparatus comprises a holder on which the incubated bird eggs are stored with their pointed ends facing downwards, wherein the embryo adjoins the inner membrane, a first detection device configured to detect the position and geometry of the air cell, and an opening device configured to create an opening in the calcified shell at the blunt end of the incubated bird egg above the taut inner membrane. Due to the open calcified shell, the sex of the embryo may be determined in a reliable way.
Systems and methods for conveying, anesthetizing, and killing poultry
In accordance with example embodiment, a system may include a supply unit, a first transfer unit, a second transfer unit, and a gas chamber. In example embodiments, the supply unit may include a plurality of compartments and each compartment may have a moving device configured to move contents of the compartment from a first end of the compartment to a second end of the compartment. In example embodiments the first transfer unit may include a second moving device. In example embodiments, the second transfer unit may include a third moving device. In example embodiments the first transfer unit may be configured to receive contents from each compartment of the supply unit and move the contents to the second transfer unit, and the third moving device may be configured to move the contents to the gas chamber.
REDUCED WEIGHT LIVE POULTRY HAULING SYSTEM
A reduced-weight poultry cage is used in conjunction with a reduced-weight trailer to transport live poultry for maximizing the poundage of poultry being transported while reducing the number of trips and fuel expenses. The poultry cage includes a combination of aluminum and plastic elements that reduce cage weight, provide for nesting of cages in stacks as well as easy replacement of failed parts. Furthermore, a drop-deck aluminum trailer with a reduced floor and guide rail alignment stops allows for a durable yet lightweight trailer that can haul a plurality of stacks of these poultry cages, thereby maximizing cubic feet availability while being compliant with various road and bridge laws.
ANTIMICROBIAL COMPOUNDS AND COMPOSITIONS, AND USES THEREOF
A method of enhancing the growth of an animal is provided. The method includes causing the animal to ingest or absorb an effective amount of one or more Fe III complex compounds, including but not limited to Fe III complexes comprising ligands bound to the iron centre selected from amino acids or ?-hydroxy acids, o-hydroxy benzoic acids or pyridine-2-carboxylic acids, such as ferric quinate, ferric tyrosine, ferric DOPA and ferric phenylalanine. Compounds which are structural and/or functional variants, derivatives and/or analogs of the foregoing compounds, as further described herein are also disclosed. Methods for inhibiting, reducing, or preventing biofilm formation or buildup on a surface; the treatment of, inhibition of growth of, and inhibition of colonization by, bacteria, both in biological and non-biological environments; disinfecting surfaces, potentiating the effects of antibiotics and other anti-microbial agents, and increasing the sensitivity of bacteria and other microorganisms, to anti-microbial agents are also provided.